Spontaneous Symmetry Breaking from an On-Shell Perspective
arXiv:2305.02502
Abstract
We show how the well known patterns of masses and interactions that arise from spontaneous symmetry breaking can be determined from an entirely on-shell perspective, that is, without reference to Lagrangians, gauge symmetries, or fields acquiring a vacuum expectation value. To do this, we review how consistent factorization of tree level scattering can lead to the familiar structures of Yang-Mills theories, and extend this to find structures of Yukawa theories. Considering only spins-, and particles, we construct all the allowed on-shell UV amplitudes under a symmetry group , and consider all the possible IR amplitudes. By demanding that on-shell IR amplitudes match onto on-shell UV amplitudes in the high energy limit, we reproduce the Higgs mechanism and generate masses for spins- and , find that there is a subgroup in the IR, and other interesting relations. To highlight the results, we show the breaking pattern of the Standard Model , along with the generation of the masses and interactions of the particles.